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Summary Anatomy Item Literature (335) Expression Attributions Wiki
XB-ANAT-462

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Cellular and subcellular localization of annexin IV in rabbit intestinal epithelium, pancreas and liver., Massey D., Biol Cell. January 1, 1991; 73 (2-3): 151-6.


Ca2(+)-activated K+ channels from rabbit kidney medullary thick ascending limb cells expressed in Xenopus oocytes., Lu L., J Biol Chem. September 25, 1990; 265 (27): 16190-4.


Developmental and thyroid hormone-dependent regulation of pancreatic genes in Xenopus laevis., Shi YB, Shi YB., Genes Dev. July 1, 1990; 4 (7): 1107-13.                


Dissimilar trophic effects of cerulein and xenopsin on the rat pancreas., Feurle GE., Int J Pancreatol. March 1, 1990; 6 (2): 129-37.


Dermal glands of Xenopus laevis contain a polypeptide with a highly repetitive amino acid sequence., Gmachl M., FEBS Lett. January 15, 1990; 260 (1): 145-8.


A new family of growth factor-like peptides. 'Trefoil' disulphide loop structures as a common feature in breast cancer associated peptide (pS2), pancreatic spasmolytic polypeptide (PSP), and frog skin peptides (spasmolysins)., Thim L., FEBS Lett. June 19, 1989; 250 (1): 85-90.


XlHbox 8: a novel Xenopus homeo protein restricted to a narrow band of endoderm., Wright CV., Development. April 1, 1989; 105 (4): 787-94.          


Synthesis and secretion of rat pancreatic proteins by Xenopus laevis oocytes., Moessner J., Pancreas. January 1, 1988; 3 (5): 499-507.


Import of frog prepropeptide GLa into microsomes requires ATP but does not involve docking protein or ribosomes., Schlenstedt G., EMBO J. March 1, 1987; 6 (3): 699-703.


Biosynthesis, processing, and secretion of M and Z variant human alpha 1-antitrypsin., Verbanac KM., J Biol Chem. July 25, 1986; 261 (21): 9979-89.


Evidence for a common evolutionary origin of brain and pancreas cholecystokinin receptors., Vigna SR., Proc Natl Acad Sci U S A. June 1, 1986; 83 (12): 4355-9.


Messenger RNA for a phorbol-ester induced 48,000 dalton protein from human melanoma cells., Opdenakker G., Biochem Biophys Res Commun. April 14, 1986; 136 (1): 122-9.


Synthesis and maturation of recombinant human tumor necrosis factor in eukaryotic systems., Müller R., FEBS Lett. March 3, 1986; 197 (1-2): 99-104.


Translocation of murine interleukin 2 into microsomes during translation in a cell-free system., Harnish DG., Mol Immunol. February 1, 1986; 23 (2): 201-7.


Signal recognition particle mediates the insertion of a transmembrane protein which has a cytoplasmic NH2 terminus., Holland EC., J Biol Chem. January 25, 1986; 261 (3): 1286-92.


In vitro biosynthesis of human renin and identification of plasma inactive renin as an activation intermediate., Hirose S., J Biol Chem. December 25, 1985; 260 (30): 16400-5.


Cytological analyses of factors which determine the number of primordial germ cells (PGCs) in Xenopus laevis., Akita Y., J Embryol Exp Morphol. December 1, 1985; 90 251-65.


Evidence for the presence of xenopsin-related peptide(s) in the gastric mucosa of mammals., Feurle GE., J Clin Invest. July 1, 1985; 76 (1): 156-62.


Reversible effects of heptanol on gap junction structure and cell-to-cell electrical coupling., Bernardini G., Eur J Cell Biol. July 1, 1984; 34 (2): 307-12.


Corticotropin-releasing factor (CRF)-like immunoreactivity in the gastro-entero-pancreatic endocrine system., Petrusz P., Peptides. January 1, 1984; 5 Suppl 1 71-8.


Corticotropin-releasing factor (CRF)-like immunoreactivity in the vertebrate endocrine pancreas., Petrusz P., Proc Natl Acad Sci U S A. March 1, 1983; 80 (6): 1721-5.


Development of peroxisomes in amphibians. II. Cytochemical and biochemical studies on the liver, kidney, and pancreas., Dauca M., J Exp Zool. September 20, 1982; 223 (1): 57-65.


Effect of xenopsin on blood flow, hormone release, and acid secretion., Zinner MJ., Am J Physiol. September 1, 1982; 243 (3): G195-9.


Synthesis and processing of the dimorphic forms of rat alpha 2u-globulin., Chatterjee B., Biochim Biophys Acta. July 30, 1982; 698 (1): 22-8.


Secretory proteins induced in human fibroblasts under conditions used for the production of interferon beta., Content J., Proc Natl Acad Sci U S A. May 1, 1982; 79 (9): 2768-72.


Amphibian neurotensin (NT) is not xenopsin (XP): dual presence of NT-like and XP-like peptides in various amphibia., Carraway R., Endocrinology. April 1, 1982; 110 (4): 1094-101.


Characterization of the soluble cyclic nucleotide phosphodiesterases in Xenopus laevis oocytes. Evidence for a calmodulin-dependent enzyme., Miot F., Biochim Biophys Acta. February 18, 1982; 701 (2): 253-9.


In Vitro Synthesis and Processing of Wheat alpha-Amylase : TRANSLATION OF GIBBERELLIC ACID-INDUCED WHEAT ALEURONE LAYER RNA BY WHEAT GERM AND XENOPUS LAEVIS OOCYTE SYSTEMS., Boston RS., Plant Physiol. January 1, 1982; 69 (1): 150-4.


Differential capacity for translation and lack of competition between mRNAs that segregate to free and membrane-bound polysomes., Richter JD., Cell. November 1, 1981; 27 (1 Pt 2): 183-91.


Poor evidence for insulin/insulin-like immunoreactivity in the CNS of lower vertebrates., Bernstein HG., Acta Histochem. January 1, 1981; 69 (1): 57-60.


Radioimmunoassay of methionine(5)-enkephalin sulphoxide: phylogenetic and anatomical distribution., King JA., Peptides. January 1, 1980; 1 (3): 211-6.


Tissue distribution of immunoreactive somatostatin in the South African clawed toad (Xenopus laevis)., Shapiro B., J Endocrinol. March 1, 1979; 80 (3): 407-8.


The effects of xenopsin of endocrine pancreas and gastric antrum in dogs., Kawanishi K., Horm Metab Res. July 1, 1978; 10 (4): 283-6.


Ultrastructural analysis of some functional aspects of Xenopus laevis pancreas during development and metamorphosis., Leone F., J Embryol Exp Morphol. December 1, 1976; 36 (3): 711-24.


[Lipase activity of the pancreas and the glycogen content of the hepatic cells in Xenopus laevis after treatment with 4-methyl-2-thiouracil. Biochemical and histochemical research]., GUARDABASSI A., Boll Soc Ital Biol Sper. November 15, 1960; 36 1174-6.

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